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A new constraint based fracture criterion for surface cracks
Authors:AM Leach  JC Newman Jr
Affiliation:a Department of Materials Science and Engineering, Georgia Institute of Technology, 771 Ferst Drive, N.W., Atlanta, GA 30332, USA
b Department of Mechanical Engineering, Mississippi State University, 210 Carpenter Building, Mississippi State, MS 39762, USA
c Department of Aerospace Engineering, Mississippi State University, 330 Walker Engineering Laboratory, Hardy Street, Mississippi State, MS 39762, USA
Abstract:A new methodology for predicting the location of maximum crack extension along a surface crack front in ductile materials is presented. Three-dimensional elastic-plastic finite element analyses were used to determine the variations of a constraint parameter (αh) based on the average opening stress in the crack tip plastic zone and the J-integral distributions along the crack front for many surface crack configurations. Monotonic tension and bending loads are considered. The crack front constraint parameter is combined with the J-integral to characterize fracture, the critical fracture location being the location for which the product h is a maximum. The criterion is verified with test results from surface cracked specimens.
Keywords:Surface Crack  Constraint  FEA
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